The Neoproterozoic era (1,000–542 Myr ago) was an era of climatic extremes and biological evolutionary developments culminating in the emergence of animals (Metazoa) and new ecosystems. Here we show that abundant sedimentary 24-isopropylcholestanes, the hydrocarbon remains of C30 sterols produced by marine demosponges, record the presence of Metazoa in the geological record before the end of the Marinoan glaciation (635 Myr ago). These sterane biomarkers are abundant in all formations of the Huqf Supergroup, South Oman Salt Basin, and, based on a new high-precision geochronology, constitute a continuous 100-Myr-long chemical fossil record of demosponges through the terminal Neoproterozoic and into the Early Cambrian epoch. The demosponge st...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Sedimentary hydrocarbon remnants of eukaryotic C26–C30 sterols can be used to reconstruct early alga...
The Neoproterozoic era (1,000–542 Myr ago) was an era of climatic extremes and biological evolutiona...
The Neoproterozoic era (1,000–542 Myr ago) was an era of climatic extremes and biological evolutiona...
In this investigation, we monitored the stratigraphic occurrence and abundance of the fossil C30 ste...
Sterane biomarkers preserved in ancient sedimentary rocks hold promise for tracking the diversificat...
Sterane biomarkers preserved in ancient sedimentary rocks hold promise for tracking the diversificat...
Abundant and well-preserved molecular biomarkers are prevalent in sediments and oils of Neoproterozo...
The earliest fossils of animal-like organisms occur in Ediacaran rocks that are approximately 571 mi...
Living organisms often leave molecular traces in the fossil record and these can provide a lens to u...
The earliest fossils of animal-like organisms occur in Ediacaran rocks that are approximately 571 mi...
The transition from simple, single cellular eukaryotes to more complex multicellular organisms, incl...
The transition from simple, single cellular eukaryotes to more complex multicellular organisms, incl...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Sedimentary hydrocarbon remnants of eukaryotic C26–C30 sterols can be used to reconstruct early alga...
The Neoproterozoic era (1,000–542 Myr ago) was an era of climatic extremes and biological evolutiona...
The Neoproterozoic era (1,000–542 Myr ago) was an era of climatic extremes and biological evolutiona...
In this investigation, we monitored the stratigraphic occurrence and abundance of the fossil C30 ste...
Sterane biomarkers preserved in ancient sedimentary rocks hold promise for tracking the diversificat...
Sterane biomarkers preserved in ancient sedimentary rocks hold promise for tracking the diversificat...
Abundant and well-preserved molecular biomarkers are prevalent in sediments and oils of Neoproterozo...
The earliest fossils of animal-like organisms occur in Ediacaran rocks that are approximately 571 mi...
Living organisms often leave molecular traces in the fossil record and these can provide a lens to u...
The earliest fossils of animal-like organisms occur in Ediacaran rocks that are approximately 571 mi...
The transition from simple, single cellular eukaryotes to more complex multicellular organisms, incl...
The transition from simple, single cellular eukaryotes to more complex multicellular organisms, incl...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Molecular fossils (or biomarkers) are key to unraveling the deep history of eukaryotes, especially i...
Sedimentary hydrocarbon remnants of eukaryotic C26–C30 sterols can be used to reconstruct early alga...